[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2861":3,"related-2861":53},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":8,"source_name":9,"source_url":6,"published_at":10,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":14,"score_detail":15,"sources":23,"tags":25,"search_phrases":31,"slug":34,"view_count":35,"doi":36,"paper":37,"created_at":52},2861,"Resource-use archetypes in contrasting agrosilvopastoral systems: An emergy study of Portuguese Montado and Scottish grasslands","https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.agsy.2026.104979","Resource-use archetypes in contrasting agrosilvopastoral systems: An emergy study of Portuguese Montado and Scottish grasslands。Agricultural Systems",null,"Agricultural Systems","2026-09-17T00:00:00Z","论文",10,false,73,{"impact":16,"substance":17,"depth":18,"authority":19,"freshness":20,"relevant":21,"comment":22},12,20,18,14,9,1,"核心期刊发表的能值分析比较研究，方法新颖、结论可靠，但属国际案例研究，对国内三农实践的直接影响力有限。",[24],{"name":9,"url":6},[26,27,28,29,30],"农业生态","农林复合系统","能值分析","草地畜牧","资源利用",[32,33],"葡萄牙 Montado 农林复合","苏格兰草地 能值分析","葡萄牙Montado农林复合-2861",0,"10.1016\u002Fj.agsy.2026.104979",{"doi":36,"openalex_id":38,"authors":39,"venue":9,"cited_by_count":35,"oa_url":8,"card":8,"direction":8,"ingested_from":51},"W7213505994",[40,42,44,46,48],{"name":41,"orcid":8},"Joana Marinheiro",{"name":43,"orcid":8},"João Serra",{"name":45,"orcid":8},"Cairistiona Topp",{"name":47,"orcid":8},"Cláudia Marques-dos-Santos",{"name":49,"orcid":50},"Ana Fonseca","https:\u002F\u002Forcid.org\u002F0000-0002-3207-4819","openalex","2026-09-18T23:30:04.393059Z",{"total":54,"page":21,"page_size":54,"items":55},6,[56,105,149,193,243,278],{"id":57,"title":58,"url":59,"summary":60,"summary_zh":61,"content":8,"source_name":62,"source_url":59,"published_at":10,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":63,"score_detail":64,"sources":69,"tags":71,"search_phrases":76,"slug":79,"view_count":35,"doi":80,"paper":81,"created_at":104},2785,"Remote Sensing-Based Assessment of Interannual Change of the Ecological Sustainability of Agricultural Landscapes in Northern Benin","https:\u002F\u002Fdoi.org\u002F10.3390\u002Fsu18189542","Assessing ecological sustainability in agricultural landscapes requires approaches that integrate land-cover change, its ecological effects, and their spatial determinants. This study analysed changes between 2023 and 2024 across six agricultural landscapes in northern Benin using the Landscape Ecological Sustainability Index (LESI), calculated for 1 km2 landscape cells from Human Disturbance Coefficients (HDCs) assigned to satellite-derived land-cover classes. Interannual changes were assessed using ΔLESI, the Wilcoxon signed-rank test, Global Moran’s I, and the Local Indicators of Spatial Association (LISA). The contribution of land-cover transitions to HDC change was quantified and a Monte Carlo sensitivity analysis based on classification accuracy was additionally used to assess the robustness of the observed interannual changes to classification uncertainty, and complementary univariate and bivariate regression models examined the relationships between LESI variations and 11 biophysical and geographical variables, including their pairwise interactions. The interannual comparison between 2023 and 2024 showed a decrease in ecological sustainability in four sites, a slight increase in one, and relative stability in another. Significant spatial autocorrelation was detected in all sites (Moran’s I = 0.44–0.65; p \u003C 0.001). Some spatially limited transitions exerted important effects on HDC change. Sensitivity analysis confirmed that the direction of ΔHDC was robust to classification uncertainty in five of the six landscapes. The low explanatory power of the univariate models (R2 ≤ 0.081) indicates that no single variable independently explains the observed changes. The bivariate interaction analyses further showed that some associations were context-dependent, although their explanatory power remained limited, with the best-performing model accounting for only 10.9% of the variation in ΔLESI. This integrated framework provides a reproducible approach for assessing, mapping, and prioritising interannual change of ecological sustainability from remote sensing data to support evidence-based agricultural landscape planning and sustainable land management.","评估农业景观的生态可持续性，需要整合土地覆盖变化、其生态效应及其空间决定因素的方法。本研究利用景观生态可持续性指数（Landscape Ecological Sustainability Index, LESI），分析了贝宁北部六个农业景观在2023年至2024年间的变化。该指数基于分配给卫星衍生土地覆盖类别的人类干扰系数（Human Disturbance Coefficients, HDCs），以1 km²景观单元为尺度进行计算。年际变化通过ΔLESI、Wilcoxon符号秩检验、全局Moran's I和局部空间关联指标（Local Indicators of Spatial Association, LISA）进行评估。研究量化了土地覆盖转变对HDC变化的贡献，并额外采用基于分类精度的蒙特卡洛敏感性分析，以评估观测到的年际变化对分类不确定性的稳健性；同时，通过互补的单变量和双变量回归模型，检验了LESI变化与11个生物物理和地理变量之间的关系，包括其两两交互作用。2023年至2024年的年际比较显示，四个样点的生态可持续性下降，一个样点略有上升，另一个样点则相对稳定。所有样点均检测到显著的空间自相关（Moran's I = 0.44–0.65；p \u003C 0.001）。一些空间范围有限的转变对HDC变化产生了重要影响。敏感性分析证实，在六个景观中的五个，ΔHDC的方向对分类不确定性具有稳健性。单变量模型的解释力较低（R² ≤ 0.081），表明没有单一变量能独立解释观测到的变化。双变量交互分析进一步表明，一些关联具有情境依赖性，尽管其解释力仍然有限，表现最佳的模型仅解释了ΔLESI变异的10.9%。这一整合框架提供了一种可重复的方法，用于从遥感数据评估、制图和优先排序生态可持续性的年际变化，以支持基于证据的农业景观规划和可持续土地管理。","Sustainability",67,{"impact":65,"substance":17,"depth":66,"authority":67,"freshness":20,"relevant":21,"comment":68},8,17,13,"方法体系完整、结论稳健的遥感评估研究，但聚焦西非贝宁地方尺度，对国内三农实践的直接参考价值有限。",[70],{"name":62,"url":59},[72,26,73,74,75],"可持续农业","遥感监测","土地利用","贝宁",[77,78],"可持续农业 农业生态 土地利用 遥感监测","可持续农业 农业生态","可持续农业农业生态土地利用遥感监测-2785","10.3390\u002Fsu18189542",{"doi":80,"openalex_id":82,"authors":83,"venue":62,"cited_by_count":35,"oa_url":59,"card":98,"direction":102,"ingested_from":51},"W7213443483",[84,87,90,92,95],{"name":85,"orcid":86},"Mikhaïl Jean De Dieu Dotou Padonou","https:\u002F\u002Forcid.org\u002F0009-0006-8295-4984",{"name":88,"orcid":89},"Antoine Denis","https:\u002F\u002Forcid.org\u002F0000-0002-3245-7131",{"name":91,"orcid":8},"Yvon-Carmen Hountondji",{"name":93,"orcid":94},"Bernard Tychon","https:\u002F\u002Forcid.org\u002F0000-0002-9367-7306",{"name":96,"orcid":97},"Gérard Nounagnon Gouwakinnou","https:\u002F\u002Forcid.org\u002F0000-0002-3595-9831",{"tldr":99,"method":100,"finding":101,"direction":102,"opportunity":103},"基于遥感与景观生态可持续性指数评估贝宁北部农业景观2023-2024年际生态可持续性变化。","用LISI指数、ΔLESI、空间自相关、蒙特卡洛敏感性分析及回归模型分析土地覆盖","四个景观生态可持续性下降，空间自相关显著，但单变量与双变量模型解释力均很低。","农业遥感与作物表型","可引入时序遥感与机器学习，探究多尺度驱动因子交互对农业景观可持续性年际变化的非线性影响。","2026-09-17T23:30:34.344705Z",{"id":106,"title":107,"url":108,"summary":109,"summary_zh":110,"content":8,"source_name":111,"source_url":108,"published_at":112,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":113,"score_detail":114,"sources":118,"tags":120,"search_phrases":124,"slug":127,"view_count":35,"doi":128,"paper":129,"created_at":148},1640,"A Biome-Specific Light Use Efficiency Model for Spatiotemporal Dynamics of GPP Across Europe Using PROBA-V and Sentinel-3 FAPAR","https:\u002F\u002Fdoi.org\u002F10.3390\u002Frs18172981","Estimates of gross primary production (GPP) derived from satellite remote sensing are crucial for assessing the terrestrial carbon dynamics. While model comparison is important, existing GPP products rely on a limited number of satellite sensors. In this study, the contemporary fraction of absorbed photosynthetically active radiation product derived from PROBA-V and Sentinel-3 was used to develop a new GPP product (EU-GPP) based on a light use efficiency (LUE) model for the European continent. EU-GPP accounted for the distinct responses of biomes to temperature and water stresses by incorporating biome-specific environmental scalars. Evaluation against eddy covariance GPP and model comparison against other LUE-based GPP products demonstrated the high model accuracy of EU-GPP within Europe. The model also responded well to the drought-induced stress, indicating its ability to capture interannual variability and the impact of extreme weather events. EU-GPP highlighted increasing GPP trends in croplands during 2014–2023, underlining the recent advancements in agricultural management practices. The Mediterranean forest ecosystems exhibited weakening GPP, suggesting the strong adverse impact of summer droughts on these ecosystems. This study presents an LUE-based GPP product based on novel remote sensing data and provides an independent perspective for the monitoring of GPP across the European continent.","基于卫星遥感估算的总初级生产力（GPP）对于评估陆地碳动态至关重要。尽管模型对比具有重要意义，但现有GPP产品依赖于数量有限的卫星传感器。本研究利用由PROBA-V和Sentinel-3卫星获取的当代光合有效辐射吸收比例产品，基于光能利用率（LUE）模型，为欧洲大陆开发了一套新的GPP产品（EU-GPP）。EU-GPP通过纳入生物群落特定的环境标量，考虑了不同生物群落对温度和水胁迫的差异化响应。通过与涡度协方差GPP数据的验证以及与其他基于LUE的GPP产品的模型对比，证明了EU-GPP在欧洲范围内具有较高的模型精度。该模型对干旱引发的胁迫也表现出良好的响应，表明其能够捕捉年际变率及极端天气事件的影响。EU-GPP揭示了2014—2023年间农田GPP呈上升趋势，凸显了近年来农业管理实践的进步。地中海森林生态系统则表现出GPP减弱，表明夏季干旱对这些生态系统产生了强烈的不利影响。本研究基于新型遥感数据提出了一套基于LUE的GPP产品，为监测欧洲大陆GPP提供了独立视角。","Remote Sensing","2026-09-03T00:00:00Z",80,{"impact":18,"substance":115,"depth":17,"authority":67,"freshness":116,"relevant":21,"comment":117},22,7,"基于新型卫星数据构建欧洲GPP产品，方法新颖且验证充分，对农业生态监测有参考价值。",[119],{"name":111,"url":108},[121,26,122,123],"遥感","碳循环","欧洲",[125,126],"农业生态 碳循环 欧洲 遥感","农业生态 碳循环","农业生态碳循环欧洲遥感-1640","10.3390\u002Frs18172981",{"doi":128,"openalex_id":130,"authors":131,"venue":111,"cited_by_count":35,"oa_url":108,"card":143,"direction":102,"ingested_from":51},"W7207753730",[132,134,137,140],{"name":133,"orcid":8},"Mingyuan Zhang",{"name":135,"orcid":136},"Lanhui Wang","https:\u002F\u002Forcid.org\u002F0000-0002-4353-1739",{"name":138,"orcid":139},"Sadegh Jamali","https:\u002F\u002Forcid.org\u002F0000-0002-0961-9497",{"name":141,"orcid":142},"Torbern Tagesson","https:\u002F\u002Forcid.org\u002F0000-0003-3011-1775",{"tldr":144,"method":145,"finding":146,"direction":102,"opportunity":147},"利用PROBA-V和Sentinel-3的FAPAR数据，开发了欧洲生物群系特异的LUE模型EU-G","基于光能利用率模型，结合生物群系特异的环境标量，使用PROBA-V和Sentin","EU-GPP精度高，能捕捉干旱胁迫，显示农田GPP增加，地中海森林GPP减弱。","可延伸至中国区域，结合国产卫星数据，构建高分辨率GPP产品，并探索管理措施对农田生产力的影响。","2026-09-04T23:30:32.316178Z",{"id":150,"title":151,"url":152,"summary":153,"summary_zh":154,"content":8,"source_name":155,"source_url":152,"published_at":112,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":156,"score_detail":157,"sources":161,"tags":163,"search_phrases":167,"slug":170,"view_count":35,"doi":171,"paper":172,"created_at":192},1519,"Interdependence of adoption decisions of agroecological vegetable cropping systems among smallholder farmers in eastern Africa","https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffsufs.2026.1899227","Vegetable production plays a vital role in enhancing nutrition and generating income in Kenya, where it is an important component of the agricultural sector. Among the most widely grown vegetables are cruciferous crops, while traditional African vegetables have increasingly gained prominence in recent years. Smallholder farmers account for more than 70% of the country’s total vegetable production. However, they face various complex factors such as extreme climate variability, invertebrate pests, and diseases which reduce productivity, yields and household incomes. They, therefore, often resort to the overuse of synthetic fertilizers and pesticides that could increase their susceptibility to pest resistance, declining soil fertility, and production risks. Agroecological cropping systems have been shown to improve soil fertility, suppress pests, and support sustainable livelihoods in Kenya. Nevertheless, despite their potential benefits, the adoption of agroecological cropping systems remains low. Therefore, this study aims to empirically analyze the factors influencing smallholder farmers’ adoption of selected agroecological vegetable cropping systems in Kenya. This study utilized a multistage sampling approach to gather cross-sectional data from 546 farmers cultivating cruciferous and traditional African vegetables in Kiambu and Murang’a counties. The sample size was determined using the specified sampling methodology. The agroecological vegetable cropping systems examined in this study included mixed cropping, strip cropping, row intercropping, border cropping, and crop rotation. Data was analyzed using a multivariate probit regression model. The findings indicated that adoption decisions were multivariate and interdependent across agroecological cropping systems. Household head gender, plot manager gender, and access to extension services had varying positive and negative impacts on the adoption of agroecological cropping systems. In addition, the occupation of the household head and income from non-vegetable farming activities was positively associated with adoption, while gross income derived from vegetable production was negatively associated with the adoption of some cropping systems. These findings highlight the need to strengthen agricultural extension services, promote gender-responsive farmer training, improve access to market opportunities, and support income diversification initiatives to enhance the adoption of agroecological vegetable cropping systems among smallholder farmers.","蔬菜生产在肯尼亚改善营养和增加收入方面发挥着重要作用，是该国农业部门的重要组成部分。在种植最广泛的蔬菜中，十字花科作物占据重要地位，而传统非洲蔬菜近年来日益受到重视。小农户占该国蔬菜总产量的70%以上。然而，他们面临着极端气候变率、无脊椎动物害虫和病害等各种复杂因素，这些因素降低了生产力、产量和家庭收入。因此，他们往往过度使用合成肥料和农药，这可能增加其对害虫抗药性、土壤肥力下降和生产风险的脆弱性。农业生态种植系统已被证明能够改善土壤肥力、抑制害虫，并支持肯尼亚的可持续生计。然而，尽管具有潜在效益，农业生态种植系统的采用率仍然较低。因此，本研究旨在实证分析影响肯尼亚小农户采用特定农业生态蔬菜种植系统的因素。本研究采用多阶段抽样方法，从基安布郡和穆兰阿郡种植十字花科蔬菜和传统非洲蔬菜的546名农户中收集横截面数据。样本量根据指定的抽样方法确定。本研究考察的农业生态蔬菜种植系统包括混作、条带种植、行间套作、边行种植和轮作。数据采用多元概率比回归模型进行分析。研究结果表明，各农业生态种植系统的采用决策具有多元性和相互依赖性。户主性别、地块管理者性别以及推广服务的获取对农业生态种植系统的采用产生了不同的正向和负向影响。此外，户主的职业和非蔬菜种植活动的收入与采用呈正相关，而蔬菜生产的总收入与某些种植系统的采用呈负相关。这些发现强调了加强农业推广服务、促进性别响应的农户培训、改善市场机会获取以及支持收入多样化举措的必要性，以促进农业生态蔬菜种植系统的采用。","Frontiers in Sustainable Food Systems",60,{"impact":16,"substance":18,"depth":158,"authority":16,"freshness":159,"relevant":21,"comment":160},16,2,"研究东非小农采纳生态农业种植系统的影响因素，数据详实，对农业推广有参考价值，但时效性较低。",[162],{"name":155,"url":152},[164,165,26,166],"非洲","小农户","蔬菜种植",[168,169],"农业生态 蔬菜种植 小农户 非洲","农业生态 蔬菜种植","农业生态蔬菜种植小农户非洲-1519","10.3389\u002Ffsufs.2026.1899227",{"doi":171,"openalex_id":173,"authors":174,"venue":155,"cited_by_count":35,"oa_url":152,"card":186,"direction":190,"ingested_from":51},"W7206195758",[175,178,180,182,184],{"name":176,"orcid":177},"Essy C. Kirui","https:\u002F\u002Forcid.org\u002F0000-0002-9413-4557",{"name":179,"orcid":8},"Dickson O. Okello",{"name":181,"orcid":8},"Michael M. Kidoido",{"name":183,"orcid":8},"Daniel M. Mutyambai",{"name":185,"orcid":8},"Komivi S. Akutse",{"tldr":187,"method":188,"finding":189,"direction":190,"opportunity":191},"分析肯尼亚小农采用生态农业蔬菜种植系统的影响因素及其决策的相互依赖性。","多阶段抽样收集546户数据，采用多元概率比回归模型分析。","采用决策具有多元相互依赖性，性别、推广服务、职业和收入来源等影响各异。","农业人工智能与决策模型","可研究如何通过数字化工具优化推广服务，针对不同性别和收入群体定制生态农业技术传播策略。","2026-09-03T23:30:07.781170Z",{"id":194,"title":195,"url":196,"summary":197,"summary_zh":198,"content":8,"source_name":199,"source_url":196,"published_at":200,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":201,"score_detail":202,"sources":204,"tags":206,"search_phrases":211,"slug":214,"view_count":35,"doi":215,"paper":216,"created_at":242},1414,"Beyond Nitrogen Fixation: Multifunctional Roles of Common Bean in Organic Agroecosystems and Ecosystem-Oriented Breeding Strategies","https:\u002F\u002Fdoi.org\u002F10.20944\u002Fpreprints202609.0047.v1","Common bean (Phaseolus vulgaris L.) is the world’s most widely consumed grain legume and a foundational species for organic and low-input agriculture, yet its agroecological value extends far beyond nitrogen fixation and nutritional provisioning. This review reframes P. vulgaris as a breeding target defined by ecosystem function rather than by yield alone, synthesizing evidence on functional biology, biological nitrogen fixation, rhizosphere microbiome assembly and soil ecosystem engineering to identify the trait complexes that ecosystem-oriented breeding programs must select for. We examine the constraints limiting expression of these traits under organic management, including weed competition, biotic and abiotic stress, nutrient limitation and the scarcity of cultivars and certified seed adapted to low-input environments, and evaluate the agroecological management practices, resource-use efficiency metrics and emerging technologies, spanning precision agriculture, phenomics, molecular breeding, genome editing and microbiome engineering, that can accelerate their genetic improvement. Central to this synthesis is a paradigm shift in breeding objectives: common bean is conceptualized as a holobiont whose performance emerges from coordinated plant-microbiome interaction, requiring breeding programs to select explicitly for nitrogen-fixation efficiency, root system architecture, rhizosphere recruitment capacity, nutrient-use efficiency and multi-stress resilience as heritable, ecosystem-oriented traits. We conclude by outlining priority breeding research directions integrating genomics, phenomics, envirotyping and rhizosphere ecology, positioning common bean breeding as a strategic lever for the transition toward regenerative, climate-smart organic agriculture.","菜豆（*Phaseolus vulgaris* L.）是全球消费最广泛的食用豆类作物，也是有机农业和低投入农业的基础性物种，然而其农业生态价值远不止于生物固氮和营养供给。本综述将菜豆重新定位为以生态系统功能而非单纯产量为目标的育种对象，综合功能生物学、生物固氮、根际微生物组组装及土壤生态系统工程等方面的证据，识别以生态系统为导向的育种计划必须选择的目标性状复合体。我们考察了有机管理条件下限制这些性状表达的制约因素，包括杂草竞争、生物与非生物胁迫、养分限制以及适应低投入环境的品种和认证种子稀缺性，并评估了可加速其遗传改良的农业生态管理实践、资源利用效率指标及新兴技术，涵盖精准农业、表型组学、分子育种、基因组编辑和微生物组工程。本综述的核心在于育种目标的范式转变：菜豆被概念化为一个全生物体（holobiont），其表现源于植物-微生物组的协同互作，这就要求育种计划将固氮效率、根系构型、根际募集能力、养分利用效率及多重胁迫韧性作为可遗传的、以生态系统为导向的性状进行明确选择。最后，我们概述了整合基因组学、表型组学、环境型鉴定（envirotyping）和根际生态学的优先育种研究方向，将菜豆育种定位为向再生型、气候智能型有机农业转型的战略杠杆。","Preprints.org","2026-09-01T00:00:00Z",65,{"impact":16,"substance":18,"depth":18,"authority":12,"freshness":116,"relevant":21,"comment":203},"综述提出菜豆作为生态系统功能育种目标，涵盖多学科交叉，对有机农业和育种研究有参考价值。",[205],{"name":199,"url":196},[207,208,26,209,210],"微生物组","智慧育种","有机农业","菜豆育种",[212,213],"农业生态 微生物组 智慧育种 有机农业","农业生态 微生物组","农业生态微生物组智慧育种有机农业-1414","10.20944\u002Fpreprints202609.0047.v1",{"doi":215,"openalex_id":217,"authors":218,"venue":199,"cited_by_count":35,"oa_url":196,"card":235,"direction":241,"ingested_from":51},"W7205017877",[219,222,224,226,229,232],{"name":220,"orcid":221},"D.I. Avasiloaiei","https:\u002F\u002Forcid.org\u002F0000-0003-3316-168X",{"name":223,"orcid":8},"Mariana Calara",{"name":225,"orcid":8},"Petre Marian Brezeanu",{"name":227,"orcid":228},"Barbara Pipan","https:\u002F\u002Forcid.org\u002F0000-0002-3860-119X",{"name":230,"orcid":231},"Lovro Sinkovič","https:\u002F\u002Forcid.org\u002F0000-0002-6123-8085",{"name":233,"orcid":234},"C. Brezeanu","https:\u002F\u002Forcid.org\u002F0000-0002-3352-3081",{"tldr":236,"method":237,"finding":238,"direction":239,"opportunity":240},"综述菜豆在有机农业中的多功能生态作用，提出以生态系统为导向的育种策略。","综述功能生物学、生物固氮、根际微生物组、土壤生态工程及精准农业、表型组学、分子育","菜豆应作为全生物体育种，选择固氮效率、根系构型、根际招募等生态系统导向性状。","农业绿色发展与碳","可研究菜豆-微生物互作性状的遗传基础，结合表型组与环境型，开发低投入适应性品种。","智慧农业 \u002F 农业物联网","2026-09-02T23:30:13.807287Z",{"id":244,"title":245,"url":246,"summary":247,"summary_zh":8,"content":8,"source_name":248,"source_url":246,"published_at":249,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":14,"score_detail":250,"sources":253,"tags":255,"search_phrases":258,"slug":261,"view_count":21,"doi":262,"paper":263,"created_at":277},1272,"Biodiversity isn’t measured in tons: Making sense of nature in the context of sustainable agriculture","https:\u002F\u002Fdoi.org\u002F10.32942\u002Fx28t1r","In this review, we articulate several important, but often overlooked concepts, trends, and perspectives in the biodiversity monitoring space, specifically in the context of transforming agriculture and the wider food system. We describe the common approaches to biodiversity monitoring — those focused on species, communities, functions, habitats, etc — and the methods and tools commonly used to track change. We then describe a set of fundamental ecological principles that are often overlooked by practitioners entering the agrobiodiversity space for the first time, particularly those with technical, industrial, and policy expertise in agriculture-adjacent fields who seek to incorporate biodiversity into their research and operations. For these practitioners, we discuss the importance of abundance, the timelines along which population trends can be quantitatively established, the geographical scales at which ecological interactions play out, and the implications therein for anyone looking to monitor the effect of farm management practices. We attempt to describe the complexities that arise when navigating the intersection of ecological, agricultural, and social systems, highlighting the multiple sets of voices, values, and priorities that come into play in this space. From intergovernmental panels to individual farmers, the agrobiodiversity space holds a multitude of arenas of where decisions are made. We raise the question of “why, how, and for whom are we monitoring biodiversity?” to encourage practitioners new to this space to consider the implications of their approach. Finally, we discuss the conflicts and trade-offs that emerge in the intersection of productivity, profits, carbon and biodiversity, and explore the challenges in finding a balance between them in the transition toward a more sustainable form of agriculture.","OpenAlex","2026-08-28T00:00:00Z",{"impact":18,"substance":115,"depth":18,"authority":16,"freshness":251,"relevant":21,"comment":252},3,"综述性论文，系统梳理农业生物多样性监测的概念、方法与挑战，对农业可持续发展有参考价值。",[254],{"name":248,"url":246},[72,26,256,257],"生物多样性","监测方法",[259,260],"可持续农业 生物多样性 农业生态 监测方法","可持续农业 生物多样性","可持续农业生物多样性农业生态监测方法-1272","10.32942\u002Fx28t1r",{"doi":262,"openalex_id":264,"authors":265,"venue":8,"cited_by_count":35,"oa_url":271,"card":272,"direction":241,"ingested_from":51},"W7204518041",[266,269],{"name":267,"orcid":268},"Iqbal Singh Bhalla","https:\u002F\u002Forcid.org\u002F0000-0002-5611-8361",{"name":270,"orcid":8},"Philip Loring","https:\u002F\u002Fecoevorxiv.org\u002Frepository\u002Fobject\u002F14661\u002Fdownload\u002F25513\u002F",{"tldr":273,"method":274,"finding":275,"direction":239,"opportunity":276},"综述农业生物多样性监测的概念、方法、原则及权衡，强调监测目的与尺度。","综述常见监测方法（物种、群落等）及工具，讨论生态原则与多系统交叉。","监测需关注丰度、时间尺度、地理尺度，并权衡生产力、碳与生物多样性。","可研究农业管理措施对生物多样性的多尺度影响，及权衡碳与生物多样性的决策模型。","2026-09-01T04:03:13.203738Z",{"id":279,"title":280,"url":281,"summary":282,"summary_zh":8,"content":8,"source_name":9,"source_url":281,"published_at":283,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":284,"score_detail":285,"sources":287,"tags":289,"search_phrases":293,"slug":296,"view_count":35,"doi":297,"paper":298,"created_at":315},1217,"Linking multidimensional cropland ecosystem health assessment, spatialized dominant-driver diagnosis and mechanism-informed zoning in the middle and lower Yellow River, China","https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.agsy.2026.104946","Linking multidimensional cropland ecosystem health assessment, spatialized dominant-driver diagnosis and mechanism-informed zoning in the middle and lower Yellow River, China。Agricultural Systems","2026-08-27T00:00:00Z",63,{"impact":16,"substance":18,"depth":18,"authority":19,"freshness":21,"relevant":21,"comment":286},"聚焦黄河流域耕地生态系统健康评估，方法新颖，数据详实，对区域农业可持续发展有参考价值。",[288],{"name":9,"url":281},[26,290,291,292],"耕地健康","遥感评估","黄河流域",[294,295],"农业生态 耕地健康 遥感评估 黄河流域","农业生态 耕地健康","农业生态耕地健康遥感评估黄河流域-1217","10.1016\u002Fj.agsy.2026.104946",{"doi":297,"openalex_id":299,"authors":300,"venue":9,"cited_by_count":35,"oa_url":8,"card":8,"direction":8,"ingested_from":51},"W7204222255",[301,304,306,308,311,313],{"name":302,"orcid":303},"Shanshan Guo","https:\u002F\u002Forcid.org\u002F0000-0001-5746-5878",{"name":305,"orcid":8},"Peter M. Atkinson",{"name":307,"orcid":8},"Junchang Huang",{"name":309,"orcid":310},"Hejie Wei","https:\u002F\u002Forcid.org\u002F0000-0001-6144-0657",{"name":312,"orcid":8},"Tingyuan Zhou",{"name":314,"orcid":8},"Ling Li","2026-09-01T04:03:05.981697Z"]